#ifndef MYFUNCTIONS_H #define MYFUNCTIONS_H #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include using namespace dealii; /******************************************************************************* * Define forcing function, boundary values and exact solution ******************************************************************************/ template class ForcingFunction : public Function { public: double alpha; ForcingFunction() : Function(1) {} virtual double value(const Point & point, const unsigned int component = 0 ) const; }; template double ForcingFunction::value(const Point & point, const unsigned int ) const { double x = point[0]; double f = -alpha*(alpha - 1)*pow(x, alpha-2); return f; } template class BoundaryFunction : public Function { public: double alpha; BoundaryFunction() : Function(1) {} virtual double value(const Point & point, const unsigned int component = 0 ) const; }; template double BoundaryFunction::value(const Point & point, const unsigned int ) const { double x = point[0]; double value = pow(x,alpha); return value; } template class ExactSolution : public Function { public: double alpha; ExactSolution() : Function(1) {}; virtual double value(const Point & point, const unsigned int component = 0 ) const; virtual Tensor<1,dim> gradient (const Point &point, const unsigned int component = 0) const; }; template double ExactSolution::value(const Point & point, const unsigned int ) const { double x = point[0]; double u = pow(x, alpha); return u; } template Tensor<1,dim> ExactSolution::gradient (const Point &point, const unsigned int) const { double x = point[0]; Tensor<1,dim> grad_u; grad_u[0] = alpha*pow(x, alpha-1); grad_u[1] = 0; return grad_u; } #endif